An electric paper tray includes a base, a paper holding element pivotally mounted to at least one side of the base, a power unit arranged at the base, and a lifting module connected between the paper holding element and the power unit. The lifting module is movably mounted under the paper holding element. When the lifting module is driven by the power unit to move to a first position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to a closed position, when the lifting module is driven by the power unit to move to a second position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to an opened position.
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1. An electric paper tray used in an automatic document feeder, comprising:
a base;
a paper holding element pivotally mounted to at least one side of the base, a bottom of the paper holding element having at least one rotation shaft, the at least one rotation shaft being pivotally connected to the base;
a power unit arranged at the base; and
a lifting module connected between the paper holding element and the power unit, the lifting module being movably mounted under the paper holding element and including at least one lifting component having a bottom arranged at one end of the base and a top slidably contacted with a bottom surface of the paper holding element, at least one supporting component arranged at the bottom of the at least one lifting component and fastened in the base, and a transmission gear assembly arranged at one side of the base, the power unit being connected with the transmission gear assembly and arranged at the one side of the base,
wherein when the lifting module is driven by the power unit to move to a first position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to a closed position via the at least one rotation shaft, an outer surface of the paper holding element and a top surface of the automatic document feeder are connected and are shown as a continuous surface, at the moment, the outer surface of the paper holding element is used as an appearance surface of the automatic document feeder, when the lifting module is driven by the power unit to move to a second position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to an opened position via the at least one rotation shaft, at the moment, a receiving space is formed between the paper holding element and the automatic document feeder.
17. An automatic switching method of an automatic document feeder with an electric paper tray, comprising steps of:
detecting whether paper is loaded in a paper loading tray of the automatic document feeder by a feed-in sensor of the automatic document feeder;
driving a lifting module of the electric paper tray by a power unit of the electric paper tray to open a paper holding element of the electric paper tray if the feed-in sensor detects the paper is loaded in the paper loading tray, on the contrary, repeating detecting whether the paper is loaded in the paper loading tray;
detecting whether the paper holding element of the electric paper tray is opened and is switched from a first position to a second position by a lifting sensor of the automatic document feeder;
feeding the paper into the automatic document feeder by a pickup module of the automatic document feeder, and feeding the paper out to the paper holding element of the electric paper tray by a plurality of the transmission roller modules of the automatic document feeder if the paper holding element of the electric paper tray is opened to the second position;
judging whether the paper is detected in the paper holding element of the electric paper tray by a feed-out sensor of the automatic document feeder; and
driving the lifting module by the power unit if the feed-out sensor is unable to detect any paper in the paper holding element of the electric paper tray, the lifting module driving the paper holding element of the electric paper tray to move to the first position to close the paper holding element of the electric paper tray, at the moment, an outer surface of the paper holding element of the electric paper tray and a top surface of a base of the electric paper tray being connected and being shown as a continuous surface, and the outer surface of the paper holding element of the electric paper tray being used as an appearance surface of the automatic document feeder;
wherein when the paper holding element of the electric paper tray is moved to the first position or the second position, a driving force transmitted to the paper holding element of the electric paper tray by the power unit is interrupted by the lifting module.
12. An automatic document feeder with an electric paper tray, comprising:
a base;
a feeding path disposed in the base, an upstream and a downstream of the feeding path having a paper inlet and a paper outlet, respectively;
a pickup module mounted to the paper inlet;
a plurality of transmission roller modules arranged along the feeding path;
a paper loading tray disposed to one of the paper inlet and the paper outlet; and
an electric paper tray disposed to the other one of the paper inlet and the paper outlet, the electric paper tray including
a paper holding element pivotally mounted to at least one side of the base, a bottom of the paper holding element having at least one rotation shaft, the at least one rotation shaft being pivotally connected to the base,
a power unit arranged at the base, and
a lifting module connected between the paper holding element and the power unit, the lifting module being movably mounted under the paper holding element and including at least one lifting component having a bottom arranged at one end of the base and a top slidably contacted with a bottom surface of the paper holding element, at least one supporting component arranged at the bottom of the at least one lifting component and fastened in the base, and a transmission gear assembly arranged at one side of the base, the power unit being connected with the transmission gear assembly and arranged at the one side of the base,
wherein when the lifting module is driven by the power unit to move to a first position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to a closed position via the at least one rotation shaft, an outer surface of the paper holding element and a top surface of the base are connected and are shown as a continuous surface, at the moment, the outer surface of the paper holding element is used as an appearance surface of the automatic document feeder, the paper inlet or the paper outlet is shielded by the paper holding element of the electric paper tray, when the lifting module is driven by the power unit to move to a second position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to an opened position via the at least one rotation shaft, at the moment, the paper inlet or the paper outlet is exposed out of the paper holding element of the electric paper tray.
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The present application is based on, and claims priority from, China Patent Application No. 202010626719.1, filed Jul. 2, 2020, the disclosure of which is hereby incorporated by reference herein in its entirety.
The present invention generally relates to a paper tray, and more particularly to an electric paper tray, an automatic document feeder with the electric paper tray, and an automatic switching method of the automatic document feeder with the electric paper tray to automatically open or close the electric paper tray.
With reference to
However, the output tray 100′ is arranged below the paper loading tray 200′, a total height of the automatic document feeder 300′ shown in
Therefore, it is necessary to provide an innovative electric paper tray, an automatic document feeder with the electric paper tray and an automatic switching method of the automatic document feeder with the electric paper tray to automatically open or close the electric paper tray.
An object of the present invention is to provide an electric paper tray used in an automatic document feeder. The electric paper tray includes a base, a paper holding element pivotally mounted to at least one side of the base, a power unit arranged at the base, and a lifting module connected between the paper holding element and the power unit. A bottom of the paper holding element has at least one rotation shaft. The at least one rotation shaft is pivotally connected to the base. The lifting module is movably mounted under the paper holding element. When the lifting module is driven by the power unit to move to a first position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to a closed position via the at least one rotation shaft, an outer surface of the paper holding element and a top surface of the automatic document feeder are connected and are shown as a continuous surface, at the moment, the outer surface of the paper holding element is used as an appearance surface of the automatic document feeder, when the lifting module is driven by the power unit to move to a second position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to an opened position via the at least one rotation shaft, at the moment, a receiving space is formed between the paper holding element and the automatic document feeder.
Another object of the present invention is to provide an automatic document feeder with an electric paper tray. The automatic document feeder with the electric paper tray includes a base, a feeding path disposed in the base, a pickup module, a plurality of transmission roller modules, a paper loading tray and an electric paper tray. An upstream and a downstream of the feeding path have a paper inlet and a paper outlet, respectively. The pickup module is mounted to the paper inlet. The plurality of the transmission roller modules are arranged along the feeding path. The paper loading tray is connected with the base and is disposed to one of the paper inlet and the paper outlet. The electric paper tray is disposed to the other one of the paper inlet and the paper outlet. The electric paper tray includes a paper holding element pivotally mounted to at least one side of the base, a power unit arranged at the base, and a lifting module connected between the paper holding element and the power unit. A bottom of the paper holding element has at least one rotation shaft. The at least one rotation shaft is pivotally connected to the base. The lifting module is movably mounted under the paper holding element. When the lifting module is driven by the power unit to move to a first position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to a closed position via the at least one rotation shaft, an outer surface of the paper holding element and a top surface of the base are connected and are shown as a continuous surface, at the moment, the outer surface of the paper holding element is used as an appearance surface of the automatic document feeder, the paper inlet or the paper outlet is shielded by the paper holding element of the electric paper tray, when the lifting module is driven by the power unit to move to a second position, with respect to the base, the lifting module drives the paper holding element to make the paper holding element rotate to an opened position via the at least one rotation shaft, at the moment, the paper inlet or the paper outlet is exposed out of the paper holding element of the electric paper tray.
Another object of the present invention is to provide an automatic switching method of an automatic document feeder with an electric paper tray. Specific steps of the automatic switching method of the automatic document feeder with the electric paper tray are described hereinafter. Detect whether paper is loaded in a paper loading tray of the automatic document feeder by a feed-in sensor of the automatic document feeder. Drive a lifting module of the electric paper tray by a power unit of the electric paper tray to open a paper holding element of the electric paper tray if the feed-in sensor detects the paper is loaded in the paper loading tray, on the contrary, repeat detecting whether the paper is loaded in the paper loading tray. Detect whether the paper holding element of the electric paper tray is opened and is switched from a first position to a second position by a lifting sensor of the automatic document feeder. Feed the paper into the automatic document feeder by a pickup module of the automatic document feeder, and feed the paper out to the paper holding element of the electric paper tray by a plurality of the transmission roller modules of the automatic document feeder if the paper holding element of the electric paper tray is opened to the second position. Judge whether the paper is detected in the paper holding element of the electric paper tray by a feed-out sensor of the automatic document feeder. Drive the lifting module by the power unit if the feed-out sensor is unable to detect any paper in the paper holding element of the electric paper tray, the lifting module drives the paper holding element of the electric paper tray to move to the first position to close the paper holding element of the electric paper tray, at the moment, an outer surface of the paper holding element of the electric paper tray and a top surface of a base of the electric paper tray are connected and are shown as a continuous surface, and the outer surface of the paper holding element of the electric paper tray is used as an appearance surface of the automatic document feeder.
As described above, the electric paper tray transmits a driving force to a transmission gear assembly of the electric paper tray by means of the power unit, the transmission gear assembly drives at least one lifting component of the electric paper tray to make the paper holding element proceed with an opened action and a closed action alternately, a first elastic element of the electric paper tray provides a needed supporting force to ensure that the paper holding element can remain opened after the paper holding element is opened. A second elastic element of the electric paper tray provides a closed force to close the paper holding element to ensure that the paper holding element is able to be closed. Thus, the electric paper tray is able to be opened and closed automatically, stacked quality of a feed-out paper of the electric paper tray is improved, a structural space of the electric paper tray of the automatic document feeder is reduced to lower a cost and increase an aesthetic feeling.
The present invention will be apparent to those skilled in the art by reading the following description, with reference to the attached drawings, in which:
Referring to
Referring to
In this first preferred embodiment, the power unit 6 transmits a driving force to the transmission gear assembly 5. The transmission gear assembly 5 drives the at least one lifting component 3 to make the paper holding element 2 proceed with an opened operation or a closed operation. The power unit 6 applies a driving torque to the at least one lifting component 3 via the transmission gear assembly 5 to open and close the paper holding element 2. When the at least one lifting component 3 is driven to rotate to an opened position, a corresponding mechanism of the at least one supporting component 4 provides a needed supporting force for the opened paper holding element 2, the at least one supporting component 4 holds the at least one lifting component 3 in position to keep the paper holding element 2 being opened to a proper design angle. The proper design angle is a predefined angle. When the at least one lifting component 3 is driven to rotate to a closed position, the corresponding mechanism of the at least one supporting component 4 provides a closed force to close the paper holding element 2 to ensure that the paper holding element 2 is able to be closed so as to close the paper holding element 2.
Referring to
The connecting gear 13 is arranged between the separating gear 11 and the driving shaft 12. The connecting gear 13 is arranged in the base 1. The connecting gear 13 is coaxially connected to the separating gear 11. When the power unit 6 transmits the driving force to the separating gear 11, the separating gear 11 rotates to be able to drive the connecting gear 13 and the driving shaft 12 to rotate. Besides, the connecting gear 13 is engaged with a corresponding part of the transmission gear assembly 5, so the separating gear 11 not only drives the pickup module 14, but also transmits the driving force to the transmission gear assembly 5 to open and close the electric paper tray 100 automatically. The pickup module 14 is mounted to and exposed below the base 1. one end of the driving shaft 12 is connected to the separating gear 11, and the other end of the driving shaft 12 is connected to one side of the pickup module 14.
In this first preferred embodiment, the automatic document feeder 300 further includes a lifting module 221. The lifting module 221 includes the separating gear 11, the connecting gear 13, the at least one lifting component 3, the at least one supporting component 4 and the transmission gear assembly 5. A bottom of the paper holding element 2 has at least one rotation shaft 25. The lifting module 221 is connected between the paper holding element 2 and the power unit 6. The lifting module 221 is movably mounted under the paper holding element 2. In the present invention, when the lifting module 221 is driven by the power unit 6 to move to the first position, with respect to the base 1, the lifting module 221 drives the paper holding element 2 to make the paper holding element 2 rotate to the closed position via the at least one rotation shaft 25, the outer surface of the paper holding element 2 and a top surface of the automatic document feeder 300 are connected and are shown as a continuous surface 203, at the moment, the outer surface of the paper holding element 2 is used as an appearance surface 202 of the automatic document feeder 300, the paper inlet 303 or the paper outlet 304 is shielded by the paper holding element 2 of the electric paper tray 100. Specifically, the outer surface of the paper holding element 2 and a top surface of the base 1 are connected and are shown as the continuous surface 203. The top surface of the base 1 is defined as the top surface of the automatic document feeder 300. When the lifting module 221 is driven by the power unit 6 to move to the second position, with respect to the base 1, the lifting module 221 drives the paper holding element 2 to make the paper holding element 2 rotate to the opened position via the at least one rotation shaft 25, at the moment, a receiving space 201 is formed between the paper holding element 2 and the automatic document feeder 300. The paper inlet 303 or the paper outlet 304 is exposed out of the paper holding element 2 of the electric paper tray 100.
Referring to
At least one corresponding portion of the at least one lifting component 3 is positioned in and contacts with the at least one sliding slot 21. Two corresponding portions of the at least one lifting component 3 are positioned in and contact with the two sliding slots 21. The electric paper tray 100 of the automatic document feeder 300 further includes a pickup portion 22 and a blocking portion 23. A front end of the paper holding element 2 is equipped with the pickup portion 22 and the blocking portion 23. The pickup portion 22 is assembled at a corner of the front end of the paper holding element 2 via a pivot pin (not shown). When the paper holding element 2 is opened, the pickup portion 22 of the paper holding element 2 inclines downward due to a weight of the pickup portion 22 to facilitate for users to pick up the paper conveniently. The blocking portion 23 is connected with a middle of the front end of the paper holding element 2 and extends outward to block and reposition the paper fed out from the automatic document feeder 300 so as to avoid the paper fed out by the automatic document feeder 300 being placed in disorder. When electric paper tray 100 is closed, the blocking portion 23 is received in a front end of the inner surface of the paper holding element 2.
Referring to
Referring to
Referring to
Referring to
Referring to
In this first preferred embodiment, the electric paper tray 100 includes two supporting components 4. The two supporting components 4 include two friction pads 41, two first elastic elements 42 and two fixed shafts 44. The at least one first elastic element 42 is a compression spring, and the second elastic element 43 is a torsion spring.
Referring to
Referring to
In this first preferred embodiment, after the paper holding element 2 is opened, the at least one first elastic element 42 provides the needed supporting force for the paper holding element 2, to ensure that the paper holding element 2 is opened to the proper design angle which is the predefined angle. The second elastic element 43 provides a closing force of the paper holding element 2 to ensure that the paper holding element 2 is closed. A design of the at least one supporting component 4 has a function of supporting a paper stacked weight and being without increasing the needed supporting force to open the paper holding element 2.
Referring to
Referring to
Referring to
Referring to
Referring to
The missing teeth gear 52 has a first toothless portion 521 and a second toothless portion 522. When the electric paper tray 100 is completely opened or closed, the first toothless portion 521 and the second toothless portion 522 are used for breaking the paper holding element 2 away from the power unit 6 so as to prevent the electric paper tray 100 rotating continuously to damage the electric paper tray 100. When the electric paper tray 100 is completely opened or closed, a force transmission is discontinued between the paper holding element 2 and the power unit 6 to avoid the electric paper tray 100 being damaged due to a continuous rotation.
Referring to
Referring to
The automatic document feeder 300 further includes a feed-in sensor 101, a feed-out sensor 102, a lifting sensor 103 and an induction end 104. The feed-in sensor 101 is arranged in the automatic document feeder 300. The feed-in sensor 101 is disposed to a downstream of the paper loading tray 200 of the automatic document feeder 300.
Referring to
Step S101: firstly, be standby. the outer surface of the paper holding element 2 and the top surface of the automatic document feeder 300 are located at the same level. At the moment, the outer surface of the paper holding element 2 is performed as the appearance surface 202 of the automatic document feeder 300 to make the appearance of the automatic document feeder 300 flat so as to make the user feels comfortable.
Step S102: detect whether the paper is loaded in the paper loading tray 200 of the automatic document feeder 300 by the feed-in sensor 101 of the automatic document feeder 300, judge whether the feed-in sensor 101 is triggered, then execute a step S103 of driving the paper holding element 2 of the electric paper tray 100 by the power unit 6 to open the paper holding element 2 of the electric paper tray 100 if the feed-in sensor 101 detects the paper is loaded in the paper loading tray 200, the feed-in sensor 101 is triggered, on the contrary, repeat executing the step S102 of detecting whether the paper is loaded in the paper loading tray 200.
Step S103: then, drive the paper holding element 2 of the electric paper tray 100 by the power unit 6 of the electric paper tray 100 to open the paper holding element 2 of the electric paper tray 100.
Step S104: again, detect whether the paper holding element 2 of the electric paper tray 100 is opened and is switched from the first position 211 to the second position 212 by the lifting sensor 103 of the automatic document feeder 300, later, feed the paper into the automatic document feeder 300 by the pickup module 14 of the automatic document feeder 300, and feed out the paper to the paper holding element 2 of the electric paper tray 100 by the plurality of the transmission roller modules 301 of the automatic document feeder 300 if the paper holding element 2 of the electric paper tray 100 is opened to the second position 212, detect whether the lifting sensor 103 is triggered by the induction end 104 of the electric paper tray 100, if the lifting sensor 103 detects that the induction end 104 triggers the lifting sensor 103, then execute a step S105, on the contrary, repeat executing the step S104. In the first preferred embodiment, a rear end of the paper holding element 2 is acted as the induction end 104. When the electric paper tray 100 is opened, the rear end of the paper holding element 2 swung downward and trigger the lifting sensor 103.
Step S105: when the electric paper tray 100 is fully opened, the second gear 512 is corresponding to the second toothless portion 522 to break a link between the at least one lifting component 3 and the power unit 6, the driving force provided to the at least one lifting component 3 by the power unit 6 is interrupted by the missing teeth gear 52 for stopping driving the electric paper tray 100, the power unit 6 is stopped.
Step S106: the user operates the automatic document feeder 300, and presses a button on the automatic document feeder 300 to start feeding the paper, the automatic document feeder 300 starts transmitting the paper. In this step S106, the power unit 6 is activated to drive the pickup module 14 for feeding the paper into the automatic document feeder 300, and then execute a step S107. As shown in
Step S107: detect whether the paper is fed into the automatic document feeder 300 by the feed-in sensor 101, namely, judge whether the feed-in sensor 101 is triggered, if no paper is detected in the paper loading tray 200, then execute a step S108, on the contrary, repeat executing the step S107.
Step S108: deactivate the power unit 6, feed the paper into the automatic document feeder 300 from the paper inlet 303 of the feeding path 302 and through the pickup module 14, then transmit the paper in the feeding path 302 and by the plurality of transmission roller modules 301, and finally, feed the paper out of the paper outlet 304 of the feeding path 302 to stack the paper in the electric paper tray 100, then execute a step S109.
Step S109: then, judge whether the paper is detected in the paper holding element 2 of the electric paper tray 100 by the feed-out sensor 102 of the automatic document feeder 300, namely judge whether the feed-out sensor 102 is triggered, if the feed-out sensor 102 detects the paper, then repeat executing the step S109, after the user removes all the paper, the feed-out sensor 102 is unable to detect any paper and then execute a step S110. In this first preferred embodiment, the feed-out sensor 102 is arranged to the receiving space 201 or the paper holding element 2. If any paper is fed to the receiving space 201 or the paper holding element 2, the feed-out sensor 102 will be triggered by the fed paper, thus the feed-out sensor 102 detects that there is the paper on the electric paper tray 100. On the contrary, when the paper is taken away from the receiving space 201 or the paper holding element 2, and the feed-out sensor 102 is without being triggered by the paper, so the feed-out sensor 102 judges that the paper on the electric paper tray 100 has been taken away.
Step S110: drive the lifting module 221 by the power unit 6 if the feed-out sensor 102 is unable to detect any paper in the paper holding element 2 of the electric paper tray 100, the lifting module 221 drives the paper holding element 2 of the electric paper tray 100 to move to the first position 211 to close the paper holding element 2 of the electric paper tray 100, at the moment, the outer surface of the paper holding element 2 of the electric paper tray 100 and the top surface of the base 1 of the electric paper tray 100 are connected and are shown as the continuous surface 203, and the outer surface of the paper holding element 2 of the electric paper tray 100 is used as the appearance surface 202 of the automatic document feeder 300, and then execute a step S111.
Step S111: when the electric paper tray 100 is fully closed, the first gear 511 is corresponding to the first toothless portion 521, the driving force of the at least one lifting component 3 provided from the power unit 6 is interrupted by the missing teeth gear 52 to stop driving the electric paper tray 100, at the moment, the upper surface of the paper holding element 2 is used as the appearance surface 202 of the automatic document feeder 300. A scan of the paper is completed.
In a concrete implementation, the feed-in sensor 101, the feed-out sensor 102 and the lifting sensor 103 are selectable from a group of optical sensors, a group of oscillating arm sensors or a group of the optical sensors and the oscillating arm sensors which are used in a combination. Any combination of the optical sensors and the oscillating arm sensors is appropriate for the feed-in sensor 101, the feed-out sensor 102 and the lifting sensor 103.
Referring to
The lifting plate 8 has a first connection portion 81, a second connection portion 82 and a third connection portion 83. The first connection portion 81 is arranged at one end of the lifting plate 8 and is fastened to the base 1. The third connection portion 83 is arranged at the other end of the lifting plate 8, and the third connection portion 83 is fastened to the inner surface of the paper holding element 2. The third connection portion 83 is fastened to the bottom surface of the paper holding element 2. The second connection portion 82 is arranged between the first connection portion 81 and the third connection portion 83. The second connection portion 82 is positioned on the inclined surface of the turbine mechanism 7. When the second connection portion 82 is placed in a lower point 71, the third connection portion 83 is without lifting the paper holding element 2, and the lifting plate 8 remains horizontal. When the second connection portion 82 is placed in a higher point 72, the third connection portion 83 lifts the paper holding element 2, and at the moment, the third connection portion 83 is higher than the second connection portion 82, and the second connection portion 82 is higher than the first connection portion 81.
In the concrete implementation, the turbine mechanism 7 and the lifting plate 8 are able to replace the at least one lifting component 3 to be arranged in the electric paper tray 100. The at least one lifting component 3 is able to be an electromagnetic valve.
When the paper holding element 2 of the electric paper tray 100 is moved to the first position 211 or the second position 212, the driving force transmitted to the paper holding element 2 of the electric paper tray 100 by the power unit 6 is interrupted by the lifting module 221.
As described above, the electric paper tray 100 of the present invention transmits the driving force to the transmission gear assembly 5 of the electric paper tray 100 by means of the power unit 6, the transmission gear assembly 5 drives the at least one lifting component 3 of the electric paper tray 100 to make the paper holding element 2 proceed with an opened action and a closed action alternately, the first elastic element 42 of the electric paper tray 100 provides the needed supporting force to ensure that the paper holding element 2 can remain opened after the paper holding element 2 is opened. The second elastic element 43 of the electric paper tray 100 provides the closed force to close the paper holding element 2 to ensure that the paper holding element 2 is able to be closed. Thus, the electric paper tray 100 is able to be opened and closed automatically, stacked quality of the feed-out paper of the electric paper tray 100 is improved, a structural space of the electric paper tray 100 of the automatic document feeder 300 is reduced to lower a cost and increase an aesthetic feeling.
Fang, Jing Hua, Lu, Pei Chun, Kao, Shih Chao, Liao, Ching Feng
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